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Updated: May 22, 2026

Multi-timescale Microscopy Methods for the Characterization of Fluorescently-labeled Microbubbles for Ultrasound-Triggered Drug Release
Published on: June 12, 2021
Rapid transformation of protein-caged nanomaterials into microbubbles as bimodal imaging agents
Cheng-An J Lin1, Wen-Kai Chuang, Zih-Yun Huang
1Department of Biomedical Engineering, Chung Yuan Christian University, Chung-Li 32023, Taiwan. chengan_lin@cycu.edu.tw
Abstract:
We present a general method for converting colloidal nanomaterials into microbubbles as ultrasound contrast agents. Protein-caged nanomaterials, made either by self-assembled nanoparticles' protein corona or by fluorescent gold nanoclusters, can be rapidly transformed into microbubbles via a sonochemical route, which promote disulfide cross-linking of cysteine residues between protein-caged nanomaterials and free albumin during acoustic cavitation. The proposed methods yielded microbubbles with multiple functions by adjusting the original nanoparticle/protein mixture. We also showed a new dual-modal imaging agent of fluorescent gold microbubbles in vitro and in vivo, which can hold many potential applications in medical diagnostics and therapy.
